The Aborted Microspores (AMS)-Like Gene Is Required for Anther and Microspore Development in Pepper (Capsicum annuum L.)
文献类型: 外文期刊
作者: Guo, Jinju 1 ; Liu, Chen 1 ; Wang, Peng 1 ; Cheng, Qing 1 ; Sun, Liang 1 ; Yang, Wencai 1 ; Shen, Huolin 1 ;
作者机构: 1.China Agr Univ, Coll Hort, Dept Vegetable Sci, Beijing Key Lab Growth & Dev Regulat Protected Ve, Beijing 100193, Peoples R China
2.Shandong Acad Agr Sci, Inst Vegetables & Flowers, Shandong Key Lab Greenhouse Vegetable Biol, Shandong Bran
关键词: Capsicum annuum L; CaAMS; bHLH transcription factor; MYC family; male sterility
期刊名称:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES ( 影响因子:5.923; 五年影响因子:6.132 )
ISSN: 1422-0067
年卷期: 2018 年 19 卷 5 期
页码:
收录情况: SCI
摘要: Pepper (Capsicum annuum L.) is an economically important vegetable crop worldwide. Although many genes associated with anther and pollen development have been identified, little is known about the mechanism of pollen abortion in pepper. Here, we identified and isolated two putative aborted microspore (AMS) isoforms from pepper flowers: CaAMS1 and CaAMS2. Sequence analysis showed that CaAMS2 was generated by retention of the fourth intron in CaAMS1 pre-mRNA. CaAMS1 encodes a putative protein with a basic helix-loop-helix (bHLH) domain belonging to the MYC subfamily of bHLH transcription factors, and it is localized to the nucleus. Truncated CaAMS2-1 and CaAMS2-2 are produced by alternative splicing. Quantitative real-time PCR analysis showed that CaAMS (referred to CaAMS1 and CaAMS2-2) was preferentially expressed in stamens and its expression level gradually decreases with flower development. RNA in situ hybridization analysis showed that CaAMS is strongly expressed in the tapetum at the tetrad and uninucleate stages. Downregulation of CaAMS led to partial shortened filaments, shriveled, indehiscent stamens and abortive pollens in pepper flowers. Several genes involved in pollen exine formation were downregulated in defective CaAMS-silenced anthers. Thus, CaAMS seems to play an important role in pepper tapetum and pollen development by regulating a complex genetic network.
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